Aims and Scope
Journal of Biomedicine and Biosensors (ISSN: 2583-3170) is an international, peer-reviewed journal dedicated to publishing innovative research in biomedicine, biomedical engineering, biosensing technologies, diagnostics, and related interdisciplinary fields. The journal aims to promote research that advances the development and application of biosensors, biomedical devices, diagnostic technologies, and emerging biomedical solutions for improved healthcare.
Scope
The scope of the journal includes, but is not limited to:
Biomedicine – Research on biological mechanisms, human health, diseases, diagnosis, and therapeutic applications.
Biomedical Sciences – Fundamental and applied research in biology, medicine, and biomedical applications.
Biomedical Engineering – Research integrating engineering principles with medicine, biology, and healthcare.
Biosensors – Development and application of biological sensing technologies for detecting and monitoring biological targets.
Bioelectronics – Research on electronic technologies for biological sensing, measurement, and healthcare applications.
Biomedical Devices – Design and development of innovative devices for diagnosis, monitoring, treatment, and rehabilitation.
Medical Diagnostics – Research on diagnostic methods, technologies, biomarkers, and disease detection.
Point-of-Care Diagnostics – Development of rapid, portable, and accessible diagnostic systems for healthcare settings.
Nanobiosensors – Research on nanoscale materials and technologies for advanced biosensing applications.
Nanomedicine – Application of nanotechnology to disease diagnosis, drug delivery, imaging, and therapy.
Biomedical Nanotechnology – Development of nanomaterials and nanosystems for biomedical applications.
BioMEMS – Research on microelectromechanical systems for biomedical and biosensing applications.
Microfluidics – Development of microscale fluidic systems for biological analysis, diagnostics, and laboratory applications.
Lab-on-a-Chip – Research on miniaturized platforms integrating multiple laboratory functions for biomedical analysis.
Wearable Biosensors – Development of wearable technologies for continuous monitoring of physiological and biochemical parameters.
Implantable Biosensors – Research on biosensing systems designed for implantation and real-time monitoring of biological conditions.
Optical Biosensors – Studies using optical principles and technologies for biological detection and measurement.
Electrochemical Biosensors – Research on electrochemical methods for detecting biological, chemical, and clinical targets.
Immunosensors – Development of antibody-based sensing systems for detecting biomarkers, pathogens, and disease-related molecules.
DNA and Genetic Biosensors – Research on nucleic-acid-based sensing technologies for genetic and molecular diagnostics.
Enzyme Biosensors – Studies involving enzyme-based sensing systems for biochemical and clinical detection.
Biomarkers – Research on the identification, validation, and detection of biomarkers for disease diagnosis and monitoring.
Molecular Diagnostics – Development of molecular techniques for detecting genetic, infectious, and disease-related targets.
Cancer Biosensing – Research on biosensors and diagnostic technologies for cancer detection, monitoring, and biomarker analysis.
Infectious Disease Detection – Development of biosensing and diagnostic methods for detecting infectious agents and diseases.
Pathogen Detection – Research on rapid and sensitive detection of bacteria, viruses, fungi, and other pathogens.
Drug Delivery Systems – Research on advanced systems for controlled, targeted, and efficient delivery of therapeutic agents.
Biomedical Imaging – Development and application of imaging technologies for disease diagnosis and biological investigation.
Artificial Intelligence in Biomedicine – Application of artificial intelligence and machine learning to biomedical data, diagnostics, and biosensing.
Biomedical Signal Processing – Research on acquisition, processing, analysis, and interpretation of biomedical signals.
Bioinformatics – Computational approaches for analyzing biological, biomedical, genetic, and clinical data.
Personalized Medicine – Research supporting individualized diagnosis, treatment, monitoring, and healthcare decision-making.
Regenerative Medicine – Research involving tissue engineering, biomaterials, stem cells, and biological repair.
Biomaterials – Development and characterization of materials for biomedical devices, implants, diagnostics, and therapeutic applications.
Tissue Engineering – Research on engineered biological tissues, scaffolds, cells, and regenerative healthcare applications.
Healthcare Monitoring – Development of technologies for real-time monitoring of physiological and biochemical parameters.
Smart Healthcare Technologies – Innovative sensing, monitoring, connected-device, and digital technologies for modern healthcare.
Emerging Biomedical Technologies – Innovative interdisciplinary research addressing new technologies and emerging applications in biomedicine and biosensing.